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Articles

Reduced Motor Interference in Preschoolers with Autism Spectrum Disorder and Williams Syndrome

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Pages 751-763 | Received 24 Apr 2018, Accepted 22 Sep 2018, Published online: 15 Oct 2018

References

  • Anagnostou, E., Bear, M., & Dawson, G. (2011). Future directions in the treatment of autism spectrum disorders. In D. G. Amaral, G. Dawson, & D. H. Geschwind (eds), Autism spectrum disorders (pp. 1259–1268). New York, NY: Oxford University Press.
  • Baio, J., Wiggins, L., Christensen, D. L., Maenner, M. J., Daniels, J., Warren, Z., … Durkin, M. S. (2018). Prevalence of autism spectrum disorder among children aged 8 years—autism and developmental disabilities monitoring network, 11 Sites, United States, 2014. MMWR Surveillance Summaries, 67(6), 1. doi:10.15585/mmwr.ss6706a1
  • Becchio, C., & Castiello, U. (2012). Visuomotor resonance in autism spectrum disorders. Frontiers in Integrative Neuroscience, 6, 110. doi:10.3389/fnint.2012.00110
  • Bellugi, U., Wang, P. P., & Jernigan, T. L. (1994). Williams syndrome: An unusual neuropsychological profile. Atypical Cognitive Deficits in Developmental Disorders: Implications for Brain Function, 23, 23–56.
  • Bird, G., Leighton, J., Press, C., & Heyes, C. (2007). Intact automatic imitation of human and robot actions in autism spectrum disorders. Proceedings of the Royal Society of London B: Biological Sciences, 274(1628), 3027–3031. doi:10.1098/rspb.2007.1019
  • Blakemore, S. J., & Frith, C. (2005). The role of motor contagion in the prediction of action. Neuropsychologia, 43(2), 260–267. doi:10.1016/j.neuropsychologia.2004.11.012
  • Borroni, P., Gorini, A., Riva, G., Bouchard, S., & Cerri, G. (2011). Mirroring avatars: Dissociation of action and intention in human motor resonance. European Journal of Neuroscience, 34(4), 662–669. doi:10.1111/j.1460-9568.2011.07779.x
  • Bouquet, C. A., Shipley, T. F., Capa, R. L., & Marshall, P. J. (2011). Goal-directed actions are more contagious than non-goal-directed actions. Experimental Psychology, 58(1), 71–78. doi:10.1027/1618-3169/a000069
  • Brass, M., Bekkering, H., & Prinz, W. (2001). Movement observation affects movement execution in a simple response task. Acta Psychologica, 106(1–2), 3–22.
  • Brass, M., Bekkering, H., Wohlschlager, A., & Prinz, W. (2000). Compatibility between observed and executed finger movements: Comparing symbolic, spatial, and imitative cues. Brain and Cognition, 44(2), 124–143. doi:10.1006/brcg.2000.1225
  • Brock, J., Einav, S., & Riby, D. M. (2009). The other end of the spectrum? Social cognition in Williams syndrome. In V. Reid & T. Striano (Eds.), Social cognition: Development, neuroscience and autism,281–300. Oxford, UK: Blackwell.
  • Casartelli, L., Molteni, M., & Ronconi, L. (2016). So close yet so far: Motor anomalies impacting on social functioning in autism spectrum disorder. Neuroscience & Biobehavioral Reviews, 63, 98–105. doi:10.1016/j.neubiorev.2016.02.001
  • Catmur, C., Thompson, E. L., Bairaktari, O., Lind, F., & Bird, G. (2018). Sensorimotor training alters action understanding. Cognition, 171, 10–14. doi:10.1016/j.cognition.2017.10.024
  • Cook, J., Swapp, D., Pan, X., Bianchi-Berthouze, N., & Blakemore, S. J. (2014). Atypical interference effect of action observation in autism spectrum conditions. Psychological Medicine, 44(4), 731–740. doi:10.1017/S0033291713001335
  • Costantini, M., Galati, G., Ferretti, A., Caulo, M., Tartaro, A., Romani, G. L., & Aglioti, S. M. (2005). Neural systems underlying observation of humanly impossible movements: An fMRI study. Cerebral Cortex, 15, 1761–1767. doi:10.1093/cercor/bhi053
  • Deschrijver, E., Wiersema, J. R., & Brass, M. (2017). Disentangling neural sources of the motor interference effect in high functioning autism: An EEG-study. Journal of Autism and Developmental Disorders, 47(3), 690–700. doi:10.1007/s10803-016-2991-2
  • Edwards, M. G., Humphreys, G. W., & Castiello, U. (2003). Motor facilitation following action observation: A behavioural study in prehensile action. Brain and Cognition, 53(3), 495–502.
  • Esposito, G., & Vivanti, G. (2013). Gross motor skills. In F. Volkmar (ed.) Encyclopedia of autism spectrum disorders (pp. 1459–1462). Springer, New York, NY.
  • Gallese, V., Fogassi, L., Fadiga, L., & Rizzolatti, G. (2002). Action representation and the inferior parietal lobule. In W. Prinz & B. Hommel (Edited by), Attention and performance, vol 19 (pp. 247–266). New York, NY: Oxford University Press.
  • Gallese, V. (2007). Before and below ‘theory of mind’: Embodied simulation and the neural correlates of social cognition. Philosophical Transactions of the Royal Society B: Biological Sciences, 362(1480), 659–669. doi:10.1098/rstb.2006.2002
  • Gallese, V., & Rochat, M. J. (2018). Forms of vitality: Their neural bases, their role in social cognition, and the case of Autism Spectrum Disorder. Psychoanalytic Inquiry, 38(2), 154–164. doi:10.1080/07351690.2018.1405672
  • Gonsiorowski, A., Williamson, R. A., & Robins, D. L. (2016). Brief report: Imitation of object-directed acts in young children with autism spectrum disorders. Journal of Autism and Developmental Disorders, 46(2), 691–697. doi:10.1007/s10803-015-2596-1
  • Gowen, E., Stanley, J., & Miall, R. C. (2008). Movement interference in autism-spectrum disorder. Neuropsychologia, 46(4), 1060–1068. doi:10.1016/j.neuropsychologia.2007.11.004
  • Grecucci, A., Brambilla, P., Siugzdaite, R., Londero, D., Fabbro, F., & Rumiati, R. I. (2013). Emotional resonance deficits in autistic children. Journal of Autism and Developmental Disorders, 43(3), 616–628. doi:10.1007/s10803-012-1603-z
  • Hamilton, Antonia F. de C. (2013). Reflecting on the mirror neuron system in autism: a systematic review of current theories. Developmental Cognitive Neuroscience, 3, 91–105. doi:10.1016/j.dcn.2012.09.008
  • Hocking, D. R., Bradshaw, J. L., & Rinehart, N. J. (2008). Fronto-parietal and cerebellar contributions to motor dysfunction in Williams syndrome: A review and future directions. Neuroscience & Biobehavioral Reviews, 32(3), 497–507. doi:10.1016/j.neubiorev.2007.09.003
  • Hocking, D. R., & Caeyenberghs, K. (2017). What is the nature of motor impairments in autism, are they diagnostically useful, and what are the implications for intervention? Current Developmental Disorder Reports. doi:10.1007/s40474-017-0109-y
  • Iacoboni, M., & Dapretto, M. (2006). The mirror neuron system and the consequences of its dysfunction. Nature Reviews Neuroscience, 7(12), 942. doi:10.1038/nrn2024
  • Jarosz, A. F., & Wiley, J. (2014). What are the odds? A practical guide to computing and reporting bayes factors. The Journal of Problem Solving, 7, 2. doi:10.7771/1932-6246.1167
  • Jarvinen, A., Korenberg, J. R., & Bellugi, U. (2013). The social phenotype of Williams syndrome. Current Opinion in Neurobiology, 23(3), 414–422. doi:10.1016/j.conb.2012.12.006
  • Karmiloff-Smith, A. (2007). Williams syndrome. Current Biology, 17(24), R1035–1036. doi:10.1016/j.cub.2007.09.037
  • Kilner, J. M., Paulignan, Y., & Blakemore, S. J. (2003). An interference effect of observed biological movement on action. Current Biology, 13(6), 522–525.
  • Klin, A., Shultz, S., & Jones, W. (2015). Social visual engagement in infants and toddlers with autism: early developmental transitions and a model of pathogenesis. Neuroscience & Biobehavioral Reviews, 50, 189-203. doi:10.1016/j.neubiorev.2014.10.006
  • Krishnan-Barman, S., Forbes, P. A., & Hamilton, A. F. D. C. (2017). How can the study of action kinematics inform our understanding of human social interaction? Neuropsychologia, 105, 101–110. doi:10.1016/j.neuropsychologia.2017.01.018
  • Liepelt, R., & Brass, M. (2010). Automatic imitation of physically impossible movements. Social Cognition, 28(1), 59–73. doi:10.1521/soco.2010.28.1.59
  • Liuzza, M. T., Setti, A., & Borghi, A. M. (2012). Kids observing other kids’ hands: Visuomotor priming in children. Consciousness and Cognition, 21(1), 383–392. doi:10.1016/j.concog.2011.09.015
  • Longo, M. R., Kosobud, A., & Bertenthal, B. I. (2008). Automatic imitation of biomechanically possible and impossible actions: Effects of priming movements versus goals. Journal of Experimental Psychology: Human Perception and Performance, 34(2), 489.
  • Lord, C., Risi, S., DiLavore, P. S., Shulman, C., Thurm, A., & Pickles, A. (2006). Autism from 2 to 9 years of age. Archives Of General Psychiatry, 63(6), 694-701. doi:10.1001/archpsyc.63.6.694
  • Lord, C., Rutter, M., DiLavore, P. C., Risi, S., Gotham, K., & Bishop, S. (2012). Autism diagnostic observation schedule: ADOS-2. Los Angeles, CA: Western Psychological Services.
  • Marshall, P. J., Bouquet, C. A., Thomas, A. L., & Shipley, T. F. (2010). Motor contagion in young children: Exploring social influences on perception–Action coupling. Neural Networks, 23(8–9), 1017–1025. doi:10.1016/j.neunet.2010.07.007
  • Mullen, E. (1995). Mullen Scales of Early Learning. Circle Pines, MN: AGS.
  • Ng, R., Brown, T. T., Erhart, M., Järvinen, A. M., Korenberg, J. R., Bellugi, U., & Halgren, E. (2016). Morphological differences in the mirror neuron system in Williams syndrome. Social Neuroscience, 11(3), 277–288. doi:10.1080/17470919.2015.1070746
  • O'Sullivan, E. P., den Berg, S., & Caldwell, C. A. (2018). Automatic imitation effects are influenced by experience of synchronous action in children. Journal Of Experimental Child Psychology, 171, 113-130. doi:10.1016/j.jecp.2018.01.013
  • Porter, M. A., Dobson-Stone, C., Kwok, J. B., Schofield, P. R., Beckett, W., & Tassabehji, M. (2012). A role for transcription factor GTF2IRD2 in executive function in Williams-Beuren syndrome. PLoS One, 7(10), e47457. doi:10.1371/journal.pone.0047457
  • Press, C., Richardson, D., & Bird, G. (2010). Intact imitation of emotional facial actions in autism spectrum conditions. Neuropsychologia, 48(11), 3291–3297. doi:10.1016/j.neuropsychologia.2010.07.012
  • Prinz, W. (1990). A common coding approach to perception and action. In O. Neumann & W. Prinz (Eds.), Relationships between perception and action: Current approaches (pp. 167–201). New York: Springer.
  • Pulvermüller, F., Moseley, R. L., Egorova, N., Shebani, Z., & Boulenger, V. (2014). Motor cognition–Motor semantics: Action perception theory of cognition and communication. Neuropsychologia, 55, 71–84. doi:10.1016/j.neuropsychologia.2013.12.002
  • Quintana, D. S., & Williams, D. R. (2018). Bayesian alternatives for common hypothesis significance tests in psychiatry: A non-technical guide using JASP. BMC Psychiatry, 18, 178. doi:10.1186/s12888-018-1598-x
  • Rizzolatti, G., & Sinigaglia, C. (2008). Mirrors in the brain: How our minds share actions and emotions. Oxford University Press, USA.
  • Rizzolatti, G., & Fogassi, L. (2014). The mirror mechanism: Recent findings and perspectives. Phil. Trans. R. Soc. B, 369(1644), 20130420. doi:10.1098/rstb.2013.0420
  • Rutherford, M. D., & Troje, N. F. (2012). IQ predicts biological motion perception in autism spectrum disorders. Journal of Autism and Developmental Disorders, 42(4), 557–565. doi:10.1007/s10803-011-1267-0
  • Rodgers, J., Riby, D. M., Janes, E., Connolly, B., & McConachie, H. (2012). Anxiety and repetitive behaviours in autism spectrum disorders and Williams syndrome: A cross-syndrome comparison. Journal of Autism and Developmental Disorders, 42(2), 175–180.
  • Rutter, M., Bailey, A., & Lord, C. (2003). The social communication questionnaire: Manual. Western Psychological Services.
  • Saby, J. N, Marshall, P. J, Smythe, R, Bouquet, C. A, & Comalli, C. E. (2011). An investigation of the determinants of motor contagion in preschool children. Acta Psychologica, 138(1), 231-236. doi:10.1016/j.actpsy.2011.06.008
  • Skwerer, D. P, Ammerman, E, & Tager-Flusberg, H. (2013). Do you have a question for me? how children with williams syndrome respond to ambiguous referential communication during a joint activity. Journal Of Child Language, 40(1), 266-289. doi:10.1017/S0305000912000360
  • Sommerville, J. A., & Decety, J. (2006). Weaving the fabric of social interaction: Articulating developmental psychology and cognitive neuroscience in the domain of motor cognition. Psychonomic Bulletin & Review, 13(2), 179–200. doi:10.3758/BF03193831
  • Sowden, S., Koehne, S., Catmur, C., Dziobek, I., & Bird, G. (2016). Intact automatic imitation and typical spatial compatibility in autism spectrum disorder: Challenging the broken mirror theory. Autism Research, 9(2), 292–300. doi:10.1002/aur.1511
  • Sparaci, L., Stefanini, S., Marotta, L., Vicari, S., & Rizzolatti, G. (2012). Understanding motor acts and motor intentions in Williams syndrome. Neuropsychologia, 50(7), 1639–1649. doi:10.1016/j.neuropsychologia.2012.03.019
  • Sparrow, S. S., Balla, D. A., & Cicchetti, D. V. (2005). Vineland-II adaptive behavior scales. Circle Pines, MN: AGS Publishing.
  • Spengler, S., Bird, G., & Brass, M. (2010). Hyperimitation of actions is related to reduced understanding of others’ minds in autism spectrum conditions. Biological Psychiatry, 68(12), 1148–1155. doi:10.1016/j.biopsych.2010.09.017
  • Stanley, J., Gowen, E., & Miall, R. C. (2007). Effects of agency on movement interference during observation of a moving dot stimulus. Journal of Experimental Psychology: Human Perception and Performance, 33(4), 915–926. doi:10.1037/0096-1523.33.4.915
  • Stromme, P., Bjornstad, P. G., & Ramstad, K. (2002). Prevalence estimation of Williams syndrome. Journal of Child Neurology, 17(4), 269–271. doi:10.1177/088307380201700406
  • Tessari, A., & Rumiati, R. I. (2004). The strategic control of multiple routes in imitation of actions. Journal of Experimental Psychology: Human Perception and Performance, 30(6), 1107.
  • van Schaik, J. E., Endedijk, H. M., Stapel, J. C., & Hunnius, S. (2016). Young children’s motor interference is influenced by novel group membership. Frontiers in Psychology, 7, 321. doi:10.3389/fpsyg.2016.00321
  • Vivanti, G., & Hamilton, A. (2014). Imitation in autism spectrum disorders.F. R. Volkmar, S. Rogers, K. Pelphrey, & R. Paul Eds, (Fourth ed). Handbook of Autism and Pervasive Developmental Disorders, 278–302, Hoboken, NJ: Wiley.
  • Vivanti, G., Fanning, P. A., Hocking, D. R., Sievers, S., & Dissanayake, C. (2017c). Social attention, joint attention and sustained attention in autism spectrum disorder and Williams syndrome: Convergences and divergences. Journal of Autism and Developmental Disorders, 47(6), 1866–1877. doi:10.1007/s10803-017-3106-4
  • Vivanti, G., Hamner, T., & Lee, N. (in press). Neurodevelopmental disorders affecting sociability: Recent research advances and future directions in Autism and Williams syndrome. Current Neurology and Neuroscience Reports, doi:10.1007/s11910-018-0902-y.
  • Vivanti, G., Hocking, D. R., Fanning, P., & Dissanayake, C. (2016a). Social affiliation motives modulate spontaneous learning in Williams syndrome but not in autism. Molecular Autism, 7(1), 40. doi:10.1186/s13229-016-0101-0
  • Vivanti, G., Hocking, D. R., Fanning, P., & Dissanayake, C. (2016b). Verbal labels increase the salience of novel objects for preschoolers with typical development and Williams syndrome, but not in autism. Journal of Neurodevelopmental Disorders. doi:10.1186/s11689-016-9180-7
  • Vivanti, G., Hocking, D. R., Fanning, P., & Dissanayake, C. (2017). The social nature of overimitation: Insights from autism and Williams syndrome. Cognition, 161, 10–18. doi:10.1016/j.cognition.2017.01.008
  • Vivanti, G., McCormick, C., Young, G. S., Abucayan, F., Hatt, N., Nadig, A., … Rogers, S. J. (2011). Intact and impaired mechanisms of action understanding in autism. Developmental Psychology, 47(3), 841. doi:10.1037/a0023105
  • Vivanti, G, & Rogers, S. J. (2014). Autism and the mirror neuron system: insights from learning and teaching. Philosophical Transactions Of The Royal Society B: Biological Sciences, 369, 1644. doi:10.1098/rstb.2013.0184
  • Vivanti, G., Trembath, D., & Dissanayake, C. (2014). Mechanisms of imitation impairment in autism spectrum disorder. Journal of Abnormal Child Psychology, 42(8), 1395–1405. doi:10.1007/s10802-014-9874-9
  • Wadsworth, H. M., Maximo, J. O., Donnelly, R. J., & Kana, R. K. (2018). Action simulation and mirroring in children with autism spectrum disorders. Behavioural Brain Research, 341, 1–8. doi:10.1016/j.bbr.2017.12.012
  • Wetzels, R., Matzke, D., Lee, M. D., Rouder, J. N., Iverson, G. J., & Wagenmakers, E.-J. (2011). Statistical evidence in experimental psychology: An empirical comparison using 855 t tests. Perspectives on Psychological Science, 6, 291–298. doi:10.1177/1745691611406923
  • Williams, J. H., Whiten, A., Suddendorf, T., & Perrett, D. I. (2001). Imitation, mirror neurons and autism. Neuroscience & Biobehavioral Reviews, 25(4), 287–295. doi:10.1016/S0149-7634(01)00014-8
  • Williams, J. H. G. (2008). Self-other relations in social development and autism: Multiple roles for mirror neurons and other brain bases. Autism Research, 1(2), 73–90. doi:10.1002/aur.15

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